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Versatile Cellular Uptake Mediated by Catanionic Vesicles: Simultaneous Spontaneous Membrane Fusion and Endocytosis

机译:阳离子囊泡介导的多功能细胞摄取:同时自发膜融合和胞吞作用。

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摘要

Lactose-derived catanionic vesicles offer unique opportunities to overcome cellular barriers. These potential nanovectors, very easy to formulate as drug delivery systems, are able to encapsulate drugs of various hydrophilicity. This article highlights versatile interaction mechanisms between these catanionic vesicles, labeled with hydrophilic and amphiphilic fluorescent probes, and a mammalian cell line, Chinese Hamster Ovary. Confocal microscopy and flow cytometry techniques show that these vesicles are internalized by cells through cellular energy dependent processes, as endocytosis, but are simultaneously able to spontaneously fuse with cell plasma membranes and release their hydrophilic content directly inside the cytosol. Such innovative and polyvalent nanovectors, able to deliver their content via different internalization pathways, would positively be a great progress for the coadministration of drugs of complementary efficiency.
机译:乳糖衍生的阳离子小泡为克服细胞屏障提供了独特的机会。这些潜在的纳米载体非常易于配制成药物递送系统,能够包裹各种亲水性的药物。本文重点介绍了用亲水性和两亲性荧光探针标记的这些阳离子小泡与哺乳动物细胞系中国仓鼠卵巢之间的多功能相互作用机制。共聚焦显微镜和流式细胞术技术表明,这些囊泡通过细胞能量依赖性过程被细胞内化,如内吞作用,但同时能够自发融合细胞质膜并直接在细胞质内释放其亲水成分。这种创新的多价纳米载体能够通过不同的内在化途径传递其内含物,对于共补充具有互补功效的药物,无疑将是一个巨大的进步。

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